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Biomedical subjects

J Dalmau

Publications and source records attributed to J Dalmau.

At least 109 records · Page 6Linked to original sources

Hemorheological profile in patients with cardiovascular risk factors.

In order to find out whether hemorheological alterations precede the atherosclerotic lesions and could constitute an atherothrombotic risk factor, we studied the hemorheological profile in 150 healthy normotensive offspring whose parents were diagnosed as having essential hypertension WHO I-II grade and in another group of 40 children with familial hypercholesterolemia (FH) but without vascular atherosclerosis lesions, whose parents also suffer from FH. In offspring of hypertensive individuals, a significant increase in the fibrinogen level with respect to the control group was found both in males and females. In addition, only the female offspring showed a higher leucocyte count. FH children showed increased erythrocyte aggregation and increased plasma viscosity with respect to the control group. The fact that the rheological alterations appear prior to the development of the vascular lesion suggests that they could play a role in the pathogenesis of the atherosclerotic process.

Adolescent↗

Pitfalls in the diagnosis of autoantibodies associated with paraneoplastic neurologic disease.

We studied the sera of 15 patients with Sjögren's syndrome using the Western blot technique for the presence of anti-Ro and anti-Hu (type 1 antineuronal nuclear autoantibody [ANNA-1]). All sera reacted with Ro-52 protein. Two of the Sjögren sera reacted with 38-kd bands on Western blots of rat cerebellar homogenate, resembling anti-Hu immunoreactivity. However, when reacted with purified human Purkinje cells or purified recombinant HuD protein, none of the sera immunoreacted with the Hu antigens. We recommend the use of either a recombinant Hu protein or the combination of immunohistochemistry and Western blot of purified human neuronal preparations to identify paraneoplastic antibodies. This approach will prevent the unnecessary workup for suspected lung cancer.

Animals↗

Major histocompatibility proteins, anti-Hu antibodies, and paraneoplastic encephalomyelitis in neuroblastoma and small cell lung cancer.

BACKGROUND: Patients with neuroendocrine-related tumors and paraneoplastic encephalomyelitis (PEM) or paraneoplastic sensory neuronopathy (PSN) develop high titers of antibodies, called anti-Hu, against neuronal proteins expressed in their tumors, usually small cell lung cancer (SCLC). These tumors appear to be more indolent than those not associated with anti-Hu antibodies. The aims of this study were to determine 1) if patients with neuroblastoma (NB) also have anti-Hu antibodies, 2) the correlation between antibody titer and survival, and 3) if coexpression of Hu antigens and major histocompatibility proteins (MHC) by the tumor correlates with the development of anti-Hu associated PEM/PSN: METHODS: Using immunohistochemistry and Western blot analysis, the sera of 109 patients with NB whose neurologic condition was concealed at the time of the study were examined for the presence of anti-Hu antibodies. The expression of Hu antigens and MHC proteins in 50 nonselected NB and 26 SCLC (16 known to be from seropositive and 10 from seronegative patients) was examined using immunohistochemistry. RESULTS: Four Stage 4 NB patients were seropositive and had longer survival (median 86 months) than 71 seronegative patients in the same age group and with the same tumor stage (median survival, 28.5 months). Seventy-eight percent of NB and all SCLC expressed Hu antigens. Overall, 17 of 20 tumors from seropositive patients expressed both Hu and MHC Class I proteins, but only 4 of 30 tumors from seronegative patients expressed both proteins (P < 0.0001). CONCLUSIONS: 1) Some patients with NB develop anti-Hu antibodies; a search for that type of tumor is indicated in seropositive children, 2) most NBs and SCLCs express Hu antigens but only a few are associated with anti-Hu antibodies, and 3) Class I MHC expressed by some Hu antigen-bearing tumors may play a role in the development of anti-Hu associated PEM/PSN:

Adult↗

Hu antigens: reactivity with Hu antibodies, tumor expression, and major immunogenic sites.

HuD, a human neuronal RNA-binding protein, was the first identified member of a family of antigens that also includes HuC and Hel-N1 (Hu antigens). The serum of all patients with anti-Hu-associated paraneoplastic encephalomyelitis and sensory neuronopathy react with HuD and Hel-N1, but the reactivity with HuC is unknown. In the current study we examined (1) the reactivity of anti-Hu sera with HuD, HuC, and Hel-N1; (2) the expression of HuD, HuC, and Hel-N1 messenger RNA in small-cell lung cancer of patients with and those without paraneoplastic encephalomyelitis/sensory neuronopathy; (3) the correlation between anti-Hu serum reactivity with these three Hu antigens and the type of neurological symptoms; and (4) the major immunogenic sites of HuD. Our findings indicate that all anti-Hu sera react with HuD, HuC, and Hel-N1. However, only HuD is expressed in the small-cell lung cancer tumors, indicating that among the three Hu antigens, HuD appears to play a central role in triggering the anti-Hu immune response. No differences were identified regarding the reactivity of the anti-Hu antibodies with HuD, HuC, and Hel-N1 and the spectrum of neurological symptoms presented by the patients. Study of the major immunogenic sites of HuD resulted in the identification of two major immunodominant regions with at least two distinct epitopes recognized by the serum of all patients with anti-Hu-associated paraneoplastic encephalomyelitis/sensory neuronopathy.

Adolescent↗

Paraneoplastic encephalomyelitis antigens bind to the AU-rich elements of mRNA.

The Hu antigens are composed of a family of neuronal-specific, RNA-binding proteins encoded by at least three distinct genes. All three gene products, HuD, HuC/ple21, and Hel-N1, are human homologues of Elav, a Drosophila protein required for neuronal development and maintenance. Although the three proteins are very similar in structure, they are differentiated by alternative splicing of their mRNAs. We report here that the Hu antigens bind avidly to the AU-rich element resident in many mRNAs that regulate cell proliferation. This interaction suggests that the Hu antigens promote neuronal differentiation by suppressing the neuroblast cell cycle. Such a mechanism provides a plausible model for the role of the Hu antigens in tumorigenesis, neuronal differentiation, and paraneoplastic neurologic disorders.

Amino Acid Sequence↗

Gene transfer of wild-type p53 results in restoration of tumor-suppressor function in a medulloblastoma cell line.

The replacement of functional genes into cells that lack genes or have mutant genes is the basis of gene therapy. In cancer, where cells often have multiple genetic defects, the replacement of critical genes may suffice to suppress cell growth or induce cell death. The high frequency of mutations of the p53 tumor-suppressor gene in human cancers, including primary brain tumors, suggests that p53 plays a critical role in carcinogenesis and tumor progression. We report the successful transfer of the wild-type p53 gene using a defective herpes simplex viral vector into a human medulloblastoma cell line containing a mutant copy of p53. Upon gene transfer, we detected novel expression of wild-type p53 protein in the cells. In addition, the p53 protein was functionally active, since gene transfer resulted in increased levels of mdm2 proteins and induced cell cycle arrest of the majority of transduced cells. To our knowledge, this is the first report of the use of this vector system to carry wild-type p53. We conclude that defective herpes simplex viral vectors can transfer and express p53 in human primary brain tumor cells in vitro, restoring wild-type p53 tumor-suppressor functions.

Animals↗

Immunological and pathological study of anti-Ri-associated encephalopathy.

A patient with high titers of the anti-Ri antibody died 3 years after a progressive course with ataxia, opsoclonus, dementia, and peripheral neuropathy. At autopsy, no tumor was found. The nervous system exhibited severe Purkinje cell loss and contained perivascular and interstitial inflammatory infiltrates, particularly involving the brainstem. B and CD4 cells predominated in the perivascular spaces and CD8 cells in the interstitial infiltrates. Complement reactivity and natural killer cells were present and predominated in areas with more intense inflammatory infiltrates. Deposits of IgG were detected in the cytoplasm and nuclei of some neurons, particularly those in the brainstem tegmentum. The proportion of anti-Ri IgG in the total IgG extracted from various areas of the brain, serum, and cerebrospinal fluid was determined by quantitative western blot analysis. Anti-Ri reactivity was identified in immunoblots of all regions of the brain, but it predominated in basis pontis and dorsal mesencephalon. Our findings support the hypothesis of an autoimmune basis for the disorder and suggest that an antibody-mediated mechanism may play a role in its pathogenesis.

Aged↗

Sera from some patients with antibody-associated paraneoplastic encephalomyelitis/sensory neuronopathy recognize the Ro-52K antigen.

Screening a small cell lung cancer cDNA library with serum from a patient with antibody-associated paraneoplastic sensory neuronopathy (Anti-Hu syndrome) resulted in the isolation of a cDNA clone encoding the Ro-52 kD antigen. The Ro-52 kD antigen is one of the major antigens recognized by the sera of patients with Sjögren's syndrome and systemic lupus erythematosus. Further investigation revealed that the sera of only a small percentage (4%) of patients with the Hu syndrome reacted with Ro-52 kD antigen. The cross-reactivity may result from a domain of high homology between Ro-52 kD and HuD antigen. These results emphasize the necessity of using recombinant antigens whenever possible when assaying for assaying for specific antibodies.

Amino Acid Sequence↗

Analysis of the IgG subclass distribution and inflammatory infiltrates in patients with anti-Hu-associated paraneoplastic encephalomyelitis.

Using immunohistochemistry, we studied the IgG subclass distribution of the anti-Hu antibody in serum, nervous system, and tumor of patients with anti-Hu-associated paraneoplastic encephalomyelitis/sensory neuropathy (PEM/PSN). The nervous system was also examined for deposits of complement and the distribution and type of inflammatory cells. IgG1 and IgG3 were the predominant isotypes of the anti-Hu IgG in serum, nervous system, and tumor. A few patients also had anti-Hu IgG2, but this isotype was not consistently present in all the regions of the nervous system studied. There was no correlation between neurologic symptoms and specific anti-Hu isotype, nor was there evidence that different anti-Hu isotypes recognized specific brain regions. Although IgG1 and IgG3 can activate complement, only weak complement reactivity was found, and that only in a few areas of the nervous system. This finding, in addition to the absence of natural killer (NK) cells, suggested that complement-mediated toxicity and antibody-dependent cell cytotoxicity mediated by NK cells are not pathogenic in PEM/PSN. Inflammatory infiltrates included CD19+ (B cells) and CD4+ (helper/inducer) cells in the perivascular spaces, and lymphocytes bearing CD8+CD11b- markers (cytotoxic T cells) in the interstitial spaces. Infiltrates of EBM11+ (monocyte/macrophage) cells were identified in the perivascular spaces (macrophage phenotype) and in those interstitial regions (microglial phenotype) with severe pathologic changes. The ability of the IgG1 and IgG3 isotypes to bind Fc receptors may have played a role in the recruitment of these monocyte/macrophage cells.(ABSTRACT TRUNCATED AT 250 WORDS)

Antibodies↗

Paraneoplastic temporal lobe epilepsy with testicular neoplasm and atypical amnesia.

We report a patient who, at age 38, presented with temporal lobe seizures and an atypical memory disorder 3 years before the discovery of a testicular tumor. Detailed neuropsychological testing revealed a relatively isolated amnestic syndrome. The amnesia was atypical as the patient could retain information for hour-long periods, only to lose it later. Serologic studies revealed the presence of a circulating autoantibody that demonstrated an unusual affinity for the nucleolus of cerebral cortical neurons. Western blot analysis of cortical neurons revealed that this antibody reacted with proteins different from other previously identified paraneoplastic neurologic antigens (Hu, Yo, Ri). We believe this to be a case of paraneoplastic limbic encephalitis secondary to the testicular tumor. This patient presents unique characteristics with respect to the mode of presentation, features of the amnesia, and the presence of a circulating antibody with an unusual reactivity pattern.

Amnesia↗